Wieland Willemien H, Lammers Aart, Schots Arjen, Orzáez Diego V
Laboratory of Molecular Recognition and Antibody Technology, Wageningen University, P.O. Box 8123, 6700 ES Wageningen, The Netherlands.
J Biotechnol. 2006 Apr 10;122(3):382-91. doi: 10.1016/j.jbiotec.2005.12.020. Epub 2006 Jan 31.
Delivery of secretory IgA antibodies (sIgA) to mucosal surfaces is a promising strategy to passively prevent infectious diseases. Plants have been proposed as biofactories for such complex immunoglobulin molecules. Recently, the molecular characterization of all four monomers of chicken sIgA (IgA immunoglobulin heavy and light chains, J-chain and secretory component) has been completed, allowing recombinant, up scaled production of chicken sIgA and extension of passive immune strategies to poultry. To test the suitability of the plant cell factory for bulk production of chicken sIgA, we studied the expression of chicken IgA, dIgA and sIgA in planta. To that end, new cassettes were designed that allowed the grafting of immunoglobulin variable regions derived from combinatorial libraries into full-size chicken IgA frames ready for plant expression. Using this system, 10 individual phage display clones, which had previously been selected against Eimeria acervulina antigens, were transferred "from phage to plant". Plant-made chicken antibodies showed strong differences in expression levels, which seemed governed mainly by the stability of their respective light chains. Finally, with the co-expression of chicken IgA heavy and light chains, J-chain and secretory component in N. benthamiana leaves we showed that plant cells are suitable biofactories for the production of assembled chicken sIgA complexes.
将分泌型IgA抗体(sIgA)递送至粘膜表面是一种被动预防传染病的有前景的策略。植物已被提议作为生产此类复杂免疫球蛋白分子的生物工厂。最近,鸡sIgA的所有四种单体(IgA免疫球蛋白重链和轻链、J链和分泌成分)的分子特征已完成,这使得鸡sIgA能够进行重组、规模化生产,并将被动免疫策略扩展到家禽领域。为了测试植物细胞工厂大规模生产鸡sIgA的适用性,我们研究了鸡IgA、dIgA和sIgA在植物中的表达。为此,设计了新的盒式结构,允许将来自组合文库的免疫球蛋白可变区嫁接到可用于植物表达的全尺寸鸡IgA框架中。使用该系统,将10个先前针对堆型艾美耳球虫抗原筛选出的单个噬菌体展示克隆“从噬菌体转移到植物”。植物生产的鸡抗体在表达水平上表现出很大差异,这似乎主要受其各自轻链稳定性的控制。最后,通过在本氏烟草叶片中共表达鸡IgA重链和轻链、J链和分泌成分,我们表明植物细胞是生产组装好的鸡sIgA复合物的合适生物工厂。